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Up-scaled synthesis process of sulphur-based thermoelectric materials

机译:基于硫的热电材料的上缩放的合成过程

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The scale up of Spark Plasma Sintering (SPS) for the consolidation of large square monoliths (50 × 50 × 3 mm ~(3) ) of thermoelectric materials is demonstrated and the properties of the fabricated samples compared with those from laboratory scale SPS. The SPS processing of n-type TiS _(2) and p-type Cu _(10.4) Ni _(1.6) Sb _(4) S _(13) produces highly dense compacts of phase pure material. Electrical and thermal transport property measurements reveal that the thermoelectric performance of the consolidated n- and p-type materials is comparable with that of material processed using laboratory scale SPS, with ZT values that approach 0.75 and 0.35 at 700 K for Cu _(10.4) Ni _(1.6) Sb _(4) S _(13) and TiS _(2) , respectively. Mechanical properties of the consolidated materials show that large-scale SPS processing produces highly homogeneous materials with hardness and elastic moduli that deviate little from values obtained on materials processed on the laboratory scale. More generally, the process described in this paper is a promising way to produce high performance thermoelectric materials with square geometry, specifically required for thermoelectric device production.
机译:对热电材料的大型巨石(50×50×3mm〜(3))的整合的火花等离子体烧结(SPS)的缩放并与实验室标度SPS的那些相比,制造的样品的性质。 N型TIS _(2)和P型Cu _(10.4)Ni _(1.6)SB _(4)S _(13)的SPS处理产生高度密集的相纯材料。电气和热传输性能测量表明,固结的N-和P型材料的热电性能与使用实验室SCAS处理的材料的热电性能相当,ZT值在700 k下接近0.75和0.35的CU _(10.4) NI _(1.6)SB _(4)S _(13)和TIS _(2)。综合材料的力学性能表明,大规模的SPS处理具有高度均匀的材料,其硬度和弹性模量偏离了在实验室规模上加工的材料上获得的值。更一般地,本文中描述的方法是一种具有高性能热电材料,具有方形几何形状,特别是热电装置生产所需的高性能热电材料。

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